Transverse reinforcement of reinforced concrete (RC) columns contributes greatly to the ductility deformation capacity of RC structures. The existing models to predict the amount of transverse reinforcement required are all empirical models with low accuracy and large dispersion and have not considered the real ductility demand of individual components. This paper proposes a ductility design method of RC structure based on component drift ratio demand obtained from nonlinear structural dynamic analysis. To establish the best transverse reinforcement ratio prediction model for RC columns, based on an experimental database consisting of 498 columns, 12 machine learning (ML) models are trained. To solve the over-fitting problem caused by the c...
There is a growing need for numerical models simulating the non-linear behavior of Reinforced Concre...
This study presents a new approach for predicting the punching shear strength of reinforced concrete...
This study proposes an empirical-based approach for the nonlinear modelling and deformation capacity...
The determination of shear strength and the identification of potential failure modes are the crucia...
This paper aims to explore the feasibility of the potential use of artificial neural networks (ANN) ...
In recent years, researchers have investigated the development of artificial neural networks (ANN) a...
The development of shear capacity equations for reinforced concrete (RC) beams and columns has been ...
Accuracy prediction of the yield strength and displacement of reinforced concrete (RC) columns for e...
Local buckling of steel and excessive spalling of concrete have necessitated the need for the evalua...
Abstract. A primary objective in the seismic design of structures is to ensure that the capacity of...
Reinforced concrete slab-column structures, despite their advantages such as architectural flexibili...
This paper aims to explore the feasibility of the potential use of artificial neural networks (ANN) ...
This study presents a comprehensive nonlinear finite element study on the behavior of circular fibre...
This paper presents the design and application of a low-cycle reciprocating loading test on 23 recyc...
A large number of models to predict shear strength of structural walls have been proposed in the lit...
There is a growing need for numerical models simulating the non-linear behavior of Reinforced Concre...
This study presents a new approach for predicting the punching shear strength of reinforced concrete...
This study proposes an empirical-based approach for the nonlinear modelling and deformation capacity...
The determination of shear strength and the identification of potential failure modes are the crucia...
This paper aims to explore the feasibility of the potential use of artificial neural networks (ANN) ...
In recent years, researchers have investigated the development of artificial neural networks (ANN) a...
The development of shear capacity equations for reinforced concrete (RC) beams and columns has been ...
Accuracy prediction of the yield strength and displacement of reinforced concrete (RC) columns for e...
Local buckling of steel and excessive spalling of concrete have necessitated the need for the evalua...
Abstract. A primary objective in the seismic design of structures is to ensure that the capacity of...
Reinforced concrete slab-column structures, despite their advantages such as architectural flexibili...
This paper aims to explore the feasibility of the potential use of artificial neural networks (ANN) ...
This study presents a comprehensive nonlinear finite element study on the behavior of circular fibre...
This paper presents the design and application of a low-cycle reciprocating loading test on 23 recyc...
A large number of models to predict shear strength of structural walls have been proposed in the lit...
There is a growing need for numerical models simulating the non-linear behavior of Reinforced Concre...
This study presents a new approach for predicting the punching shear strength of reinforced concrete...
This study proposes an empirical-based approach for the nonlinear modelling and deformation capacity...